Functional Analysis of Genetic Variation in the SECIS Element of Thyroid Hormone Activating Type 2 Deiodinase

Author:

Zevenbergen Chantal1,Groeneweg Stefan1,Swagemakers Sigrid M A23,de Jong Arthur4,Medici-Van den Herik Evita5,Rispens Madzy6,Klootwijk Wim1,Medici Marco1,de Rijke Yolanda B7,Meima Marcel E1,Larsen P Reed8,Chavatte Laurent9,Venter Deon10,Peeters Robin P1,Van der Spek Peter J23,Visser W Edward1ORCID

Affiliation:

1. Department of Internal Medicine, Academic Center for Thyroid Diseases, Erasmus Medical Center, University Medical Center, Rotterdam, Netherlands

2. Department of Bioinformatics, Erasmus Medical Center, University Medical Center, Rotterdam, Netherlands

3. Department of Pathology, Erasmus Medical Center, University Medical Center, Rotterdam, Netherlands

4. Gemiva-SVG Group, Zoeterwoude, Netherlands

5. Department of Child Neurology, Erasmus Medical Center, University Medical Center, Rotterdam, Netherlands

6. ’s Heeren Loo, Noorderhaven, Netherlands

7. Department of Clinical Chemistry, Erasmus Medical Center, University Medical Center, Rotterdam, Netherlands

8. Department of Internal Medicine, Brigham and Women’s Hospital, Boston, Massachusetts

9. Centre International de Recherche en Infectiologie, CIRI, INSERM U1111, CNRS/ENS/UCBL1 UMR5308, Lyon, France

10. Department of Pathology, Mater Health Services, South Brisbane, Queensland, Australia

Abstract

Abstract Context Thyroid hormone is important for normal brain development. The type 2 deiodinase (D2) controls thyroid hormone action in the brain by activating T4 to T3. The enzymatic activity of D2 depends on the incorporation of selenocysteine for which the selenocysteine-insertion sequence (SECIS) element located in the 3′ untranslated region is indispensable. We hypothesized that mutations in the SECIS element could affect D2 function, resulting in a neurocognitive phenotype. Objective To identify mutations in the SECIS element of DIO2 in patients with intellectual disability and to test their functional consequences. Design, Setting, and Patients The SECIS element of DIO2 was sequenced in 387 patients with unexplained intellectual disability using a predefined pattern of thyroid function tests. SECIS element read-through in wild-type or mutant D2 was quantified by a luciferase reporter system in transfected cells. Functional consequences were assessed by quantifying D2 activity in cell lysate or intact cell metabolism studies. Results Sequence analysis revealed 2 heterozygous mutations: c.5703C>T and c.5730A>T, which were also present in the unaffected family members. The functional evaluation showed that both mutations did not affect D2 enzyme activity in cell lysates or intact cells, although the 5730A>T mutation decreased SECIS element read-through by 75%. In the patient harboring the c.5730A>T variant, whole genome sequencing revealed a pathogenic deletion of the STXBP1 gene. Conclusions We report on two families with mutations in the SECIS element of D2. Although functional analysis showed that nucleotide 5730 is important for normal SECIS element read-through, the two variants did not segregate with a distinct phenotype.

Funder

Erasmus Universiteit Rotterdam

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

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